Can a Global Climate Model Reproduce a Tornado Outbreak Atmospheric Pattern? Methodology and a Case Study

Loading...
Thumbnail Image

Authors

Paulina Ćwik
Renee A. McPherson
Funing Li
Jason C. Furtado

Journal Title

Journal ISSN

Volume Title

Publisher

Item Statistics

  • Total Views: 5
  • Total Downloads: 61
  • Views in the Last Month: 1

Abstract

Tornado outbreaks can cause substantial damage, injuries, and fatalities, highlighting the need to understand their characteristics for assessing present and future risks. However, global climate models (GCMs) lack the resolution to explicitly simulate tornado outbreaks. As an alternative, researchers examine large-scale atmospheric ingredients that approximate tornado-conducive environments. Building on this approach, we tested whether patterns of covariability between WMAXSHEAR and 500-hPa geopotential height anomalies, previously identified in ERA5 reanalysis, could approximate major U.S. May tornado outbreaks in a GCM. We developed a proxy-based methodology by systematically testing pairs of thresholds for both variables to identify the combination that best reproduced the leading pattern selected for analysis. These thresholds were then applied to simulations from the high-resolution MPI-ESM1.2-HR model to assess its ability to reproduce the original pattern. Results show that the model closely mirrored the observed tornado outbreak pattern, as indicated by a low normalized root mean square error, high spatial correlation, and similar distributions. This study demonstrates a replicable approach for approximating tornado outbreak patterns, applied here to the leading pattern, within a GCM, providing a foundation for future research on how such environments might evolve in a warming climate.

Description

Financial support was provided by the University of Oklahoma Libraries' Open Access Fund.

Citation

Related file

Notes

Endorsement

Review

Supplemented By

Referenced By

Collection Detail

# of Isolates from RBM

# of Isolates from TV8